Abstract:
Disclosed is a terminal assembly for a stator of a dynamoelectric machine. The terminal assembly includes a at least five electrically conductive tracks arrayed in a single layer, each track configured and positioned for electrical communication with corresponding leads extending from the stator providing electrical connection between at least one lead of stator leads and a rectifier bridge. The tracks are at least partially encapsulated in a nonconductive casing.
Abstract:
An apparatus for loading stator windings into a stator core. The apparatus includes an arbor member including a body having an outer diametric portion including a plurality of slots. The apparatus also includes a first guide track having a first end that is positioned adjacent the outer diametric portion. A second guide track includes a first end is positioned adjacent the outer diametric portion and spaced from the first end of the first guide track. The apparatus further includes a third guide track including a first end is positioned adjacent the outer diametric portion and spaced from the first end of the first guide track and the first end of the second guide track. At least one of the first, second, and third guide tracks and the arbor member is positionable to guide slot segment portions of corresponding first, second, and third stator windings into predetermined ones of the slots.
Abstract:
An electric machine includes a housing, a stator mounted within the housing, and a rotor including a spool assembly. The spool assembly includes a spool having a main body portion having a first end portion that extends substantially uninterrupted to a second end portion through an intermediate portion. The spool further includes a first plurality of mounting elements provided on the first end portion and a second plurality mounting elements provided on the first end portion. A star member is secured to the first end portion of the spool.
Abstract:
A stator assembly for a dynamoelectric machine in accordance with the present invention includes a generally cylindrically-shaped stator core having a plurality of core slots formed along the inner surface thereof and defined by a radial depth and wherein a stator coil is disposed. The plurality of core slots defines a plurality of teeth therebetween, which have caps along the inner surface of the stator core and are connected to the stator core by a yoke portion. The plurality of core slots is lined along respective inner surfaces by a plurality of insulation slot liners. The teeth caps include projections along an inner diameter of the plurality of core slots. The slot openings are delimited by the projections along the stator inner diameter. These projections are substantially equal to a width of the slot liners, and are such that the delimited slot openings are substantially equal to a width of a conductor wire to be inserted into the lined core slots. A stator winding includes slot wire segments that are received by the slot liners, which may be formed in at least one row of slot wire segments.
Abstract:
A stator of a rotary electric machine having secured core slot insulators includes a multi-phase stator winding, having a plurality of slot segments that are adapted to be radially inserted into a plurality of circumferentially spaced axially-extending core slots in a surface of a cylindrically-shaped stator core. The stator winding includes the plurality of slot segments alternately connected at the first and second ends of the stator core by a plurality of end loop segments to form the winding. At least one of the core teeth includes a distal end that is staked such that the distal end of the at least one core tooth is flared outward circumferentially to secure the stator winding within the core slots.
Abstract:
An alternator including a housing, and a stator fixedly mounted relative to the housing. The stator includes a plurality of stator slots and a stator winding arranged in the plurality of stator slots. The stator winding includes at least five stator leads extending from five adjacent ones of the plurality of stator slots. A terminal assembly is mounted to an outer surface of the housing and is connected with at least three of the at least five stator leads. The terminal assembly includes a body formed from a non-electrically conductive material and a plurality of conductive members at least partially covered by the body. The plurality of conductive members is associated with the stator winding. Each of the plurality of conductive members includes a plurality of input connectors spread out along the body in an arc that is greater than 90°.
Abstract:
Embodiments of the invention provide a starter machine that includes a motor operatively coupled to a first shaft and a pinion coupled to a second shaft. In some embodiments, a planetary gear drive system can be coupled to the first and the second shafts. The planetary gear drive system can include a planetary gear system and a first clutch being substantially adjacent to a second clutch. The planetary gear drive system can be configured and arranged so that when the first clutch is engaged, the motor can move the pinion at a first rotational speed. The planetary gear drive system is further configured so that when the second clutch is engaged, the motor can move the pinion at a second rotational speed. In some embodiments, the first rotational speed is a greater rotational speed than the second rotational speed.
Abstract:
An apparatus for loading stator windings into a stator core includes an arbor member including a body having a central axis and an outer diametric portion provided with a plurality of slots. An insertion element is rotatably mounted adjacent the arbor member. The insertion element includes a plurality of slot elements that are configured to register with the plurality of slots. A loading member is rotatably mounted adjacent the insertion element. The loading member includes a plurality of slot members that are configured to register with the plurality of slot elements. The loading member is selectively operated to receive a stator winding into one of the plurality of slot members and transfer the stator winding into one of the plurality of slot elements. The at least one insertion element is selectively operated to transfer the stator winding into one of the plurality of slots of the arbor member.
Abstract:
Disclosed herein is a brushless electric machine comprising, a housing, a stationary field coil, a shaft, a bearing, a pole segment, and a stator. The stator including a core having a plurality of core slots that extend between a first and a second end of the stator core. The stator also including a winding with a plurality of phases, each of the phases having at least one conductor having a plurality of substantially straight segments disposed in the core slots. The straight segments are alternately connected at the first and the second ends of the stator core by a plurality of end loop segments. A section of at least one of the conductors including three consecutive end loop segments and two straight segments, is formed from a single continuous conductor, and one of the core slots houses a plurality of the straight segments arranged in at least one radial row.
Abstract:
Disclosed herein is an electric machine. The electric machine includes, a housing defining an internal volume, a stationary shaft fixedly attached to the housing, a stationary field coil attached to the shaft, a pole assembly rotatable about the shaft, and a pulley fixedly attached to the pole assembly being positioned externally of the internal volume.